Nova Patents
US9928649B2

Interface for planning flight path

Summary by NHIP

Flight Path Planning Interface

The system plans a physical aircraft flight path using a virtual three-dimensional model and a tracked placement indicator. It generates digital instructions by calculating routes between key frames specified via the indicator's location and orientation while previewing simulated camera images in a viewfinder window.

Claim Score by NHIP

Read claim 18, the broadest

Abstract

A flight path of a physical aircraft vehicle is planned. A virtual three-dimensional model of a physical environment is provided. A placement indicator is tracked within the virtual three-dimensional model of the physical environment. Tracking the placement indicator includes tracking a location and an orientation of the placement indicator within the virtual three-dimensional model. A viewfinder display window that displays a simulated image captured from a simulated camera of a simulated vehicle located at the location of the placement indicator and oriented at a direction of the orientation of the placement indicator is provided. For the physical aircraft vehicle, at least a flight path and a camera image capture are planned using the placement indicator and the viewfinder display window within the virtual three-dimensional model.

US9928649B2, drawing sheet 1
Sheet 1 of 10

Term

9.6 yearsleft in the term

Expires 15 April 2036.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

20 claims: 3 independent, 17 dependent

  1. 1
    A system for planning a flight path of a physical aircraft vehicle, comprising:a processor configured to:provide a virtual three-dimensional model of a physical environment;track a placement indicator within the virtual three-dimensional model of the physical environment, wherein tracking the placement indicator includes tracking a location and an orientation of the placement indicator within the virtual three-dimensional model;provide a computer rendered viewfinder display window that displays a simulated image captured from a simulated camera of a simulated vehicle located at the location of the placement indicator and oriented at a direction of the orientation of the placement indicator;plan for the physical aircraft vehicle at least the flight path and a physical camera image capture using the placement indicator and the viewfinder display window within the virtual three-dimensional model, wherein the placement indicator has been utilized to specify based on the location and the orientation of the placement indicator at least one key frame of a plurality of key frames, a camera look-at line associated with a key frame included in the plurality of key frames is visually indicated in the virtual three-dimensional model, and the computer rendered viewfinder display window has been utilized to preview at least one key frame of the plurality of key frames;calculate the flight path between physical locations corresponding the plurality of key frames specified in the virtual three-dimensional model;andgenerate digital instructions that cause the physical aircraft vehicle to at least in part autonomously follow the calculated flight path;anda memory coupled to the processor and configured to provide the processor with instructions.
  2. 18
    Broadest claimClaim Score 34, narrow(NHIP)A method for planning a flight path of a physical aircraft vehicle, comprising:using a processor to provide a virtual three-dimensional model of a physical environment;tracking a placement indicator within the virtual three-dimensional model of the physical environment, wherein tracking the placement indicator includes tracking a location and an orientation of the placement indicator within the virtual three-dimensional model;providing a computer rendered viewfinder display window that displays a simulated image captured from a simulated camera of a simulated vehicle located at the location of the placement indicator and oriented at a direction of the orientation of the placement indicator;planning for the physical aircraft vehicle at least the flight path and a camera image capture using the placement indicator and the viewfinder display window within the virtual three-dimensional model, wherein the placement indicator has been utilized to specify based on the location and the orientation of the placement indicator at least one key frame of a plurality of key frames, a camera look-at line associated with a key frame included in the plurality of key frames is visually indicated in the virtual three-dimensional model, and the computer rendered viewfinder display window has been utilized to preview at least one key frame of the plurality of key frames;calculating the flight path between physical locations corresponding the plurality of key frames specified in the virtual three-dimensional model;andgenerating digital instructions that cause the physical aircraft vehicle to at least in part autonomously follow the calculated flight path.
  3. 20
    A computer program product for planning a flight path of a physical aircraft vehicle, the computer program product being embodied in a non-transitory computer readable storage medium and comprising computer instructions for:providing a virtual three-dimensional model of a physical environment;tracking a placement indicator within the virtual three-dimensional model of the physical environment, wherein tracking the placement indicator includes tracking a location and an orientation of the placement indicator within the virtual three-dimensional model;providing a computer rendered viewfinder display window that displays a simulated image captured from a simulated camera of a simulated vehicle located at the location of the placement indicator and oriented at a direction of the orientation of the placement indicator;planning for the physical aircraft vehicle at least the flight path and a camera image capture using the placement indicator and the viewfinder display window within the virtual three-dimensional model, wherein the placement indicator has been utilized to specify based on the location and the orientation of the placement indicator at least one key frame of a plurality of key frames, a camera look-at line associated with a key frame included in the plurality of key frames is visually indicated in the virtual three-dimensional model, and the computer rendered viewfinder display window has been utilized to preview at least one key frame of the plurality of key frames;calculating the flight path between physical locations corresponding the plurality of key frames specified in the virtual three-dimensional model;andgenerating digital instructions that cause the physical aircraft vehicle to at least in part autonomously follow the calculated flight path.